扫一扫 加微信
首页 > 期刊论文 > 论文摘要
C/C复合材料高温抗烧蚀涂层的研究进展
          
Research Progress of Anti-ablation Coatings for Carbon/Carbon Composites at High Temperature

摘    要
C/C复合材料在高温燃气高速冲刷环境中的严重氧化烧蚀限制了其在航空航天等领域的广泛应用,采用抗烧蚀涂层技术是目前提高该材料高温抗烧蚀性能的有效方法。综述了近年来国内外C/C复合材料高温抗烧蚀涂层在玻璃涂层、金属涂层、陶瓷涂层等体系方面的研究进展,总结并评价了C/C复合材料抗烧蚀涂层的抗烧蚀性能测试技术及其研究成果,提出了C/C复合材料高温抗烧蚀涂层在未来研究中潜在的重点发展方向。
标    签 C/C复合材料   抗烧蚀性能   涂层   carbon/carbon composite   anti-ablation   coating  
 
Abstract
The serious ablation of carbon/carbon (C/C) composites restricts their applications in the field of aeronautics and aerospace in the ultra-high temperature plume with high-speed gas flow. The anti-ablation coating is one of the most effective methods for the improvement of ablation resistance of C/C composites. The recent development of several oxidation resistant coatings including glass, metal and ceramic coatings for C/C composites is reviewed in this paper. Besides, the current method and research achievement of ablation simulation test are introduced. The potential important development of the ablation resistant coatings for C/C composites in the future research is also proposed.

中图分类号 TB332   DOI 10.11973/fsyfh-201703001

 
  中国光学期刊网论文下载说明


所属栏目 专论

基金项目 广东省自然基金(2016A030312015);广东省科技项目(2013B050800031;2013B010102023;2014B050502008)

收稿日期 2016/4/19

修改稿日期

网络出版日期

作者单位点击查看


引用该论文: HAN Wei,LIU Min,DENG Chun-ming,MAO Jie,ZENG De-chang. Research Progress of Anti-ablation Coatings for Carbon/Carbon Composites at High Temperature[J]. Corrosion & Protection, 2017, 38(3): 163


论文评价
共有人对该论文发表了看法,其中:
人认为该论文很差
人认为该论文较差
人认为该论文一般
人认为该论文较好
人认为该论文很好
分享论文
分享到新浪微博 分享到腾讯微博 分享到人人网 分享到 Google Reader 分享到百度搜藏分享到Twitter

参考文献
【1】李贺军. 炭/炭复合材料[J]. 新型炭材料,2001,16(2):79-80.
 
【2】WESTWOOD M E,WEBSTER J D,DAY R J,et al. Oxidation protection for carbon fiber composites[J]. J Mater Sci,1996,31:1389-1394.
 
【3】任富建,刘红娟,沈毅. C/C复合材料高温抗氧化性的研究进展[J]. 中国陶瓷工业,2007,14(5):28-31.
 
【4】付前刚,张佳平,李贺军. 抗烧蚀C/C复合材料研究进展[J]. 新型炭材料,2015,30(2):97-105.
 
【5】BUCKLEY J D,DDIE D D. Carbon-carbon material and composites[M]. New Jersey:Noyes Publications,1993.
 
【6】BUCHANAN F J,LITTLE J A. Glass sealants for carbon-carbon composites[J]. Journal of material science,1993,28:2324-2330.
 
【7】BUCHANAN F J,LITTLE J A. Particulate-containing glass sealants for carbon-carbon composites[J]. Carbon,1995,33(4):491-498.
 
【8】DELAVAL R,PALAVIT G,REY J,et al. Method for protecting porous carbon-containing material from oxidation,and material obtained thereby:5714244[P],1998-02-03.
 
【9】SMEACETTO F,FERRARIS M,SALVO M. Multilayer coating with self-sealing properties for carbon-carbon composites[J]. Carbon,2003,41(11):2105-2111.
 
【10】CHEN Z F,WU W P,CHENG H,et al. Microstructure and evolution of iridium coating on the C/C composites ablated by oxyacetylene torch[J]. Acta Astronautica,2010(66):682-687.
 
【11】TERENTIEVA V S,BOGACHKOVA O P,GORIATCHEVA E V. Method for protecting products made of a refractory material against oxidation,and resulting producted products:5677060[P],1997-10-14.
 
【12】ZHANG Y L,HU Z X,LI H J,et al. Ablation resistance of ZrB2-SiC coating prepared by supersonic atmosphere plasma spraying for SiC-coated carbon/carbon composites[J]. Ceramics International,2014,40:14749-14755.
 
【13】WANG Y L,XIONG X,ZHAO X J. Structural evolution and ablation mechanism of a hafnium carbide coating on a C/C composite in an oxyacetylene torch environment[J]. Corrosion Science,2012,61:156-161.
 
【14】WANG Y J,LI H J,FU Q G,et al. Ablation behaviour of a TaC coating on SiC coated C/C composites at different temperatures[J]. Ceramics International,2013,39:359-365.
 
【15】ZHANG J P,FU Q G,LI H J,et al. Ablation behavior of Y2SiO5/SiC coating for C/C composites under oxyacetylene torch[J]. Corrosion Science,2014,87(7):472-478.
 
【16】LI Z Q,LI H J,LI W,et al. Preparation and ablation properties of ZrC-SiC coating for carbon/carbon composites by solid phase infiltration[J]. Applied Surface Science,2011,258:565-571.
 
【17】FENG T,LI H J,FU Q G,et al. High-temperature erosion resistance and aerodynamic oxidation mechanism of multi-layer MoSi2-CrSi2-Si/SiC coated carbon/carbon composites in a wind tunnel at 1873K[J]. Carbon,2012,50(6):2171-2178.
 
【18】苏哲安,杨鑫,黄启忠,等. SiC涂层对C/C复合材料高温氧乙炔焰烧蚀性能影响[J]. 中国有色金属学报,2011,21(11):2838-2845.
 
【19】TANG S F,DENG J Y,WANG S J,et al. Ablation behaviors of ultra-high temperature ceramic composites[J]. Materials Science and Engineering:A,2007,465:1-7.
 
【20】SUN W,XIONG X,HUANG B Y,et al. ZrC ablation protective coating for carbon/carbon composites[J]. Carbon,2009,47(3):3368-3371.
 
【21】张勇,周声劢,夏金童. 炭/炭复合材料高温抗氧化研究进展[J]. 炭素技术,2004,23(4):20-25.
 
【22】WEN B,MA Z,LIU Y B. Supersonic flame ablation resistance of W/ZrC coating deposited on C/SiC composites by atmosphere plasma spraying[J]. Ceramics International,2014,40:11825-11830.
 
【23】YE Y C,ZHANG H,TONG Y G,et al. HfC-based coating prepared by reactive melt infiltration on C/C composite substrate[J]. Ceramics International,2013,3:1-7.
 
【24】WUCHINA E,OPEKA M,CAUSEY S,et al. Designing for ultrahigh-temperature applications:the mechanical and thermal properties of HfB2,HfCx,HfNx and αHf(N)[J]. Journal of Materials Science,2004,39(19):5939-5949.
 
【25】ZHANG Y L,LI H J,QIANG X F,et al. C/SiC/MoSi2-Si multilayer coatings for carbon/carbon composites for protection against oxidation[J]. Corrosion Science,2011,53(11):3840-3844.
 
【26】符文彬. C/C复合材料表面SiC/MoSi2涂层的制备及其高温抗氧化性能研究[D]. 湖南:中南大学,2015.
 
【27】毛金元,刘敏,毛杰,等. 等离子喷涂制备ZrB2-MoSi2复合涂层及其抗氧化性能[J]. 无机材料学报,2015,30(3):282-286.
 
【28】袁海根,曾金芳,杨杰,等. 防热抗烧蚀复合材料研究进展[J]. 化学推进剂与高分子材料,2006,4(1):21-25.
 
【29】GJB 323A-1996烧蚀材料烧蚀试验方法[S].
 
【30】高守臻,魏化震,李大勇,等. 烧蚀材料综述[J]. 化工新型材料,2009,37(2):19-21. 试验研究
 
【31】LI H J,FENG T,FU Q G,et al. Oxidation and erosion resistance of MoSi2-CrSi2-Si/SiC coated C/C composites in static and aerodynamic oxidation environment[J]. Carbon,2010,48(5):1636-1642.
 
【32】姚栋嘉,李贺军,张守阳,等. C/C复合材料SiC涂层强冲蚀环境的烧蚀性能研究[J]. 中国材料进展,2015,34(7/8):610-614.
 
【33】查柏林,黄定园,乔素磊,等. C/C复合材料烧蚀试验及烧蚀机理研究[J]. 固体火箭技术,2013,36(5):692-696.
 
相关信息
   标题 相关频次
 钢基体表面空气助燃超音速火焰喷涂制备铁黄铜涂层的组织和性能
 6
 超音速火焰喷涂WC-10Co4Cr涂层的高周疲劳损伤
 4
 大气等离子喷涂工艺参数对Cr2O3涂层磨损性能的影响
 4
 高速火焰喷涂工艺参数对镍基-碳化钨复合涂层结合强度的影响
 4
 近疲劳强度载荷下WC/Co涂层对300M钢疲劳性能的影响
 4
 铝合金表面活性燃烧高速燃气喷涂WC涂层的耐中性盐雾腐蚀性能
 4
 铜表面激光熔覆镍基合金的显微组织与硬度
 4
 碳/碳复合材料表面等离子喷涂羟基磷灰石涂层的形貌与相组成
 3
 碳/碳复合材料表面制备羟基磷灰石涂层的研究进展
 3
 20#钢在三元复合驱弱碱体系采出液中的腐蚀与防护
 2
 C/C复合材料显微电子计算机断层扫描成像特征
 2
 FBE与聚苯胺粉末共混涂层的防腐蚀性能
 2
 T91高温过热器管爆裂原因分析
 2
 VC添加量对激光熔覆Fe50Mn30Cr10Co10高熵合金涂层组织和性能的影响
 2
 WBE技术研究氯离子对存在针孔缺陷的涂层下金属腐蚀行为的影响
 2
 X射线荧光光谱法测定废塑料表面涂层中8种元素的含量
 2
 ZG06Cr13Ni4Mo不锈钢超音速火焰喷涂WC-10Co-4Cr涂层的抗磨蚀性能
 2
 滨海电厂水系统碳钢管道的腐蚀控制
 2
 玻璃纤维和硫脲缓蚀剂对涂层缓蚀行为的影响
 2
 不同表面处理对输电线路铁塔涂层性能的影响
 2
 材料及防护涂层在淡水环境中的腐蚀试验研究
 2
 长庆油田集输系统管道防腐蚀工艺研究
 2
 长庆油田原油储罐腐蚀现状与防腐蚀技术
 2
 长输管线外防护涂层技术的现状与发展探讨
 2
 超声波涂层测厚仪示值误差的不确定度评定
 2
 次高压燃气储罐适用内涂层
 2
 大气等离子喷涂Cr2O3涂层的响应曲面法工艺优化
 2
 大气等离子喷涂制备FeCoNiCr系高熵合金涂层的研究现状
 2
 大型储罐器壁腐蚀减薄的自动超声扫查
 2
 带涂层圆柱形零件表面缺陷的激光超声特性
 2